
The system is highly integrated, combining data monitoring, video surveillance, power distribution, fire-fighting, and lighting into one unit. It features a 3-tier BMS (Battery Management System) architecture with multi-level system protection strategies and measures, ensuring safety and reliability. The system is adaptable to various types of loads (resistive, inductive, motor load, mixed load). The overall containerized design and external wiring make it easy for installation and maintenance. It is suitable for complex environments with strong salt fog and high altitudes. The remote monitoring function facilitates convenient operation and maintenance management."
Application Scenarios
Prefabricated cabin-type substations have a wide range of applications, and here are some common scenarios:
- Urban Expansion: In the process of rapid urban development, prefabricated cabin-type substations can quickly respond to the growing demand for electricity and provide power support for newly developed areas.
- Industrial Zones: Industrial zones have high requirements for the stability and reliability of power supply. Prefab cabin-type substations can meet these needs and can be quickly relocated or expanded when necessary.
- Remote Areas: In remote areas with inconvenient transportation, prefabricated cabin-type substations can reduce the complexity and cost of on-site construction, quickly achieving power supply.
- Temporary Power Needs: On construction sites, large-scale events, or disaster relief sites, prefabricated cabin-type substations can serve as a temporary power solution, quickly deployed to meet temporary power needs.
- Power Grid Upgrades: During power grid upgrades and renovations, prefabricated cabin-type substations can serve as a transitional solution to ensure the continuity of power supply.
- Renewable Energy Projects: In wind power, solar energy, and other renewable energy projects, prefabricated cabin-type substations can be quickly integrated into the energy system to improve the efficiency of project implementation.
- Military and Defense: In military bases or defense facilities, prefabricated cabin-type substations can provide a rapidly deployable power solution to support critical missions.
- Infrastructure Construction: In the construction of highways, bridges, tunnels, and other infrastructure projects, prefabricated cabin-type substations can provide stable power support for construction.
- Agriculture and Rural Areas: In agriculture and rural areas, prefabricated cabin-type substations can improve the reliability of power supply, supporting the mechanization of agriculture and the electrification of rural areas.
- Emergency Backup Power: In places with strict requirements for power supply, such as hospitals and data centers, prefabricated cabin-type substations can serve as emergency backup power to ensure the power safety of key facilities.
The design and functionality of prefabricated cabin-type substations can be customized according to the needs of specific application scenarios to meet the special requirements of different customers.
This system is suitable as a microgrid support power source, for peak shaving and frequency regulation, as a backup power source, for smoothing fluctuations in new energy generation, and for enhancing the efficiency of traditional power generation.
The design is customizable to meet the diverse needs of different customers. The system is highly integrated, incorporating a battery system, PCS (Power Conversion System), energy management system, temperature control system, fire-fighting system, access control system, data monitoring system, AC/DC power distribution, and lighting system. It features a three-tier BMS (Battery Management System) architecture, ensuring safety and reliability. The system supports various charging modes, including pre-charging, constant current charging, equalization charging, and float charging. It has comprehensive communication, monitoring, management, control, early warning, and protection functions for long-term, continuous, and safe operation. The system's operating status can be monitored through a supervisory computer, offering robust data analysis capabilities and emergency power supply functionality."


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| YAWEI Substation Main Technical Parameters | ||||||||
|
Capacity |
Size(mm) |
Weight (kg) |
||||||
|
w |
H |
D |
Wl |
01 |
D2 |
H1 |
||
|
125kva |
2000 |
1580 |
1116 |
1180 |
508 |
575 |
1240 |
2000 |
|
160~ 500kva |
2000 |
1580 |
1350 |
1330 |
508 |
655 |
1340 |
2950 |
|
630kva |
2000 |
1710 |
1560 |
1420 |
632 |
775 |
1480 |
3400 |
|
800kva |
2000 |
1710 |
1690 |
1420 |
632 |
775 |
1480 |
3600 |
|
lOOO kva |
2000 |
1710 |
1820 |
1420 |
632 |
815 |
1480 |
4000 |
|
1250kva |
2000 |
1710 |
1840 |
1560 |
632 |
795 |
1480 |
4800 |
|
1600kva |
2205 |
1710 |
1920 |
1680 |
632 |
920 |
1520 |
5700 |
|
S:12 5 kva |
2200 |
1900 |
1240 |
1180 |
632 |
575 |
1240 |
2200 |
|
160~ 500kva |
2200 |
1900 |
1474 |
1330 |
632 |
655 |
1340 |
3150 |
|
630kva |
2200 |
1900 |
1560 |
1420 |
632 |
775 |
1480 |
3600 |
|
800kva |
2200 |
1900 |
1690 |
1420 |
632 |
775 |
1480 |
3800 |
|
lOOO kva |
2200 |
1900 |
1780 |
1420 |
632 |
815 |
1480 |
4200 |

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